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of high-precision optical clocks using photonic chip technology by: Exploring narrow linewidth chip scale laser light sources for probing and locking to atomic transitions. Exploring the use of stabilised
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crustal deformation rigs (recorded by high-resolution digital photography, laser scanning and digital image correlation) with numerical modelling to help reduce structural and geomechanical uncertainties
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learning and innovation. As part of our expansive new vision, AAO-MQ’s team of experts will build on the University’s existing strengths in astronomy, photonics, laser technology, microfabrication, applied
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-resolution digital photography, laser scanning and digital image correlation) with numerical modelling to help reduce structural and geomechanical uncertainties associated with subsurface H2 and CO2 storage in